Drug Delivery and Novel Targeting Research Group, Faculty of Pharmacy, Universiti Kebangsaan Malaysia, Jalan Raja Muda Abdul Aziz, 53000, Kuala Lumpur, Malaysia.
Int J Pharm. 2012 Sep 15;434(1-2):375-83. doi: 10.1016/j.ijpharm.2012.05.044. Epub 2012 May 27.
The aims of this research were to develop a novel bilayer hydrocolloid film based on alginate and to investigate its potential as slow-release wound healing vehicle. The bilayer is composed of an upper layer impregnated with model drug (ibuprofen) and a drug-free lower layer, which acted as a rate-controlling membrane. The thickness uniformity, solvent loss, moisture vapour transmission rate (MVTR), hydration rate, morphology, rheology, mechanical properties, in vitro drug release and in vivo wound healing profiles were investigated. A smooth bilayer film with two homogenous distinct layers was produced. The characterisation results showed that bilayer has superior mechanical and rheological properties than the single layer films. The bilayers also showed low MVTR, slower hydration rate and lower drug flux in vitro compared to single layer inferring that bilayer may be useful for treating low suppurating wounds and suitable for slow release application on wound surfaces. The bilayers also provided a significant higher healing rate in vivo, with well-formed epidermis with faster granulation tissue formation when compared to the controls. In conclusions, a novel alginate-based bilayer hydrocolloid film was developed and results suggested that they can be exploited as slow-release wound dressings.
本研究旨在开发一种新型的基于海藻酸钠的双层水胶体薄膜,并研究其作为缓控释伤口愈合载体的潜力。该双层由上层浸渍模型药物(布洛芬)和无药物的下层组成,下层作为控释膜。研究了双层的厚度均匀性、溶剂损失、水蒸气透过率(MVTR)、水化率、形态、流变学、机械性能、体外药物释放和体内伤口愈合情况。制备了具有两个均匀且明显不同层的光滑双层膜。特性研究结果表明,与单层膜相比,双层具有更好的机械和流变性能。与单层相比,双层还表现出较低的 MVTR、较慢的水化率和较低的体外药物通量,这表明双层可能有助于治疗低化脓性伤口,适合在伤口表面进行缓慢释放应用。双层还提供了更高的体内愈合率,与对照组相比,形成了更好的表皮,更快地形成肉芽组织。总之,开发了一种新型的基于海藻酸钠的双层水胶体薄膜,研究结果表明它们可被开发为缓控释伤口敷料。